A supporting structure for slope treatment

By using a support structure that is easy to assemble and disassemble, combined with embedded pipes, filter boxes, and jet pipes, the problem of inconvenient assembly and disassembly of support structures in slope treatment has been solved, enabling water and soil management and vegetation maintenance, and improving the stability and ecological restoration effect of the slope.

CN119615937BActive Publication Date: 2025-11-21JIANGXI UNIV OF SCI & TECH
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Patent Information

Application Number
CN202510007797.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-11-21
Estimated Expiration
2045-01-03

AI Technical Summary

Technical Problem

Existing slope protection structures are inconvenient to dismantle and assemble, affecting ecological restoration and making it difficult to effectively maintain soil and water stability and promote vegetation growth.

Method used

The support structure is designed for easy assembly and disassembly, including a protective base, positioning mechanism, interception mechanism and connecting unit. By combining embedded pipes, auxiliary units and connecting plates, a detachable interception unit is formed. Combined with a filter box, micro pump and jet pipe, it is used for soil and water management and vegetation maintenance.

Benefits of technology

It enables convenient installation and dismantling of the support structure, reduces soil erosion, improves slope stability, and reduces the risk of landslides through rainwater recycling and vegetation irrigation.

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Abstract

The application relates to the field of slope protection, and discloses a supporting structure convenient to disassemble for slope treatment, which comprises a protection seat, one side of the protection seat being connected with a storage seat, one side of the storage seat being provided with a connecting unit; a positioning mechanism fixedly connected on a slope, the positioning mechanism being provided with multiple, and the positioning mechanism being connected with the connecting unit; and an intercepting mechanism installed on the positioning mechanism, the multiple intercepting mechanisms being connected with each other, the supporting structure can be conveniently installed and disassembled, forms an integral whole, and is convenient for the installation of the integral whole; the supporting structure can also be disassembled at corresponding points in the subsequent process, the influence on the environment is reduced, the stability of the slope is ensured through cooperation with multiple-point limitation, and the possibility of landslide is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of slope protection, especially to a slope treatment supporting structure convenient to disassemble. BACKGROUND

[0002] Slope treatment is an important engineering measure aimed at preventing the collapse of slopes caused by natural or human factors. In slope treatment, common slope treatment methods generally use supporting engineering drawings anchoring, retaining walls, lattice beams, support piles, etc. to enhance slope stability, while strengthening drainage engineering, repairing drainage ditches, setting up on the surface or inside the slope to drain surface water and groundwater, and cutting ditches, etc. At the same time, by planting herbaceous plants, shrubs, trees, etc., the stability of the slope is increased, and ecological restoration is formed. In this process, the existing supporting mechanism generally directly uses anchor cables, then connects retaining walls at the anchor cables, and shields the soil, then cooperates with ecological restoration. During the overall operation process, the soil and water cannot be maintained to some extent, and the green plants are not maintained too much. After the treatment is completed, the concrete is not easy to disassemble and transport, which affects the ecology on the slope in the later period. SUMMARY

[0003] To solve the technical problem of inconvenient protection, the present application provides a slope treatment supporting structure convenient to disassemble.

[0004] The present application adopts the following technical scheme: a slope treatment supporting structure convenient to disassemble, comprising: a protection seat, one side of which is connected with a storage seat, one side of the storage seat is provided with a connecting unit; a positioning mechanism fixedly connected on the slope, the positioning mechanism is provided with a plurality of positioning mechanisms, the positioning mechanism is connected with the connecting unit; an intercepting mechanism installed on the positioning mechanism, a plurality of intercepting mechanisms are connected with each other;

[0005] As a further improvement of the above-mentioned scheme, the positioning mechanism comprises: an embedded pipe inserted into the slope, one side of the embedded pipe is connected with an intercepting unit; an auxiliary unit connected with the embedded pipe, the auxiliary unit is connected with the intercepting unit; a connecting plate connected with the auxiliary unit, one side of the connecting plate is connected with the intercepting mechanism.

[0006] As a further improvement of the above-mentioned scheme, the intercepting unit comprises: an embedded rod fixedly connected in the slope, a connecting ring is threadedly sleeved on the top of the embedded rod, an embedded box buried in the ground is rotatably sleeved on the top of the connecting ring; a filter box is clamped in the embedded box, symmetrical micro-pumps are fixedly connected in the filter box, the output ends of the micro-pumps are connected with installation pipes, the two installation pipes located at the most side are connected with a communication pipe, the two installation pipes close to each other are connected with a series pipe two, the filter box is connected with the embedded box; a return pipe is connected with the embedded box at one end and connected with the embedded pipe at the other end.

[0007] As a further improvement of the above-mentioned scheme, the embedded box is provided with a detection cavity, a plurality of filter holes are arranged on one side of the filter box, and a filter screen fixedly connected with the filter box is arranged on one side of the filter hole.

[0008] As a further improvement of the above-mentioned scheme, the auxiliary unit comprises: a support pipe sleeved in the embedded pipe, a top end of the support pipe being connected with the connecting plate, a bottom end of the connecting plate being fixedly connected with a moving ring threadedly sleeved with the embedded pipe; a storage cavity arranged in the embedded pipe, a submersible pump fixedly connected with the moving ring being arranged in the storage cavity, an output end of the submersible pump being connected with a through pipe connected with the support pipe; and a spray pipe rotatably sleeved on the connecting plate, the spray pipe being communicated with the connecting plate, a plurality of spray nozzles being arranged on the spray pipe.

[0009] As a further improvement of the above-mentioned scheme, the intercepting mechanism comprises: a spring hinge connected with the connecting plate, a support box fixedly connected with one side of the spring hinge; a guide box fixedly connected with the support box, a spring plate slidably sleeved with one side of the guide box, a plurality of indicator lights arranged on the guide box, a water level gauge fixedly connected with one side of the guide box, a spring connected with the bottom of the spring plate and fixedly connected with the guide box, a connecting strip and a sleeved groove connected with two sides of the guide box; two planting grooves arranged, the planting groove at the bottom being fixedly connected with the guide box, the planting groove at the top being rotatably connected with the guide box, a connecting plate fixedly connected with the bottom of the planting groove at the top, a pull rope fixedly connected with one side of the connecting plate; a stabilizing rod having one end fixedly connected with the spring plate and the other end connected with a trigger located in the guide box, a trigger end of the trigger being connected with a trigger rod, the other side of the trigger rod being in contact with a permanent magnet located in the guide box, one side of the permanent magnet being provided with an electromagnet fixedly connected with the guide box; a moving plate arranged in the guide box, the moving plate being slidably sleeved with the guide box, one side of the moving plate being fixedly connected with the pull rope, the bottom of the moving plate being fixedly connected with a moving sleeve, the bottom side of the moving sleeve being sleeved with a through rod fixedly connected with the guide box.

[0010] As a further improvement of the above-mentioned scheme, the guide box is sequentially provided with a first separation cavity, a second separation cavity and a third separation cavity from top to bottom, a sound device is fixedly connected in the first separation cavity, a controller is fixedly connected in the second separation cavity, the moving plate is located in the second separation cavity, and a battery is fixedly connected in the third separation cavity.

[0011] As a further improvement of the above-mentioned scheme, a telescopic rod is rotatably connected with one side of the guide box, a sliding block is connected with a moving end of the telescopic rod, an expansion plate is slidably sleeved with the embedded slope on the outer side of the sliding block, and a positioning rod located in the slope is fixedly connected with the bottom of the expansion plate.

[0012] As a further improvement of the above-mentioned scheme, the connecting unit comprises a series pipe I connected with the plurality of communication pipes, part of the series pipe I is connected with a buffer tank located in the buffer zone, the series pipe I located at the bottom is connected with a lifting pump connected with the protection seat, and the output end of the lifting pump is connected with the storage seat.

[0013] As a further improvement of the above-mentioned scheme, the storage seat is provided with a plurality of isolation cavities, the top of the storage seat is provided with a solar panel, and the outer side of the series pipe is bound with a cable.

[0014] Compared with the prior art, the beneficial effects of the present application are that:

[0015] 1. The finished product intercepting mechanism cooperates with the positioning mechanism to facilitate installation and disassembly, form an integral whole, facilitate overall installation, and facilitate disassembly of corresponding points in the subsequent process, reduce environmental impact, cooperate with multiple point limitations, ensure the stability of the slope, and reduce the possibility of landslides.

[0016] 2. The mutual cooperation between the plurality of devices can form a unitized intercepting unit, thereby reducing soil erosion at the corresponding position, recycling rainwater, irrigating vegetation, reducing the amount of personnel involved, reducing the amount of water in the soil, and further reducing the possibility of landslides. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is the overall structure diagram of the present application;

[0018] Figure 2 is a partial structure diagram of the present application;

[0019] Figure 3 is an intercepting mechanism structure diagram;

[0020] Figure 4 is a partial structure diagram of the intercepting mechanism;

[0021] Figure 5 is a side view cross-sectional view of the intercepting mechanism;

[0022] Figure 6 is an intercepting unit structure diagram;

[0023] Figure 7 is a front view cross-sectional view of the intercepting unit;

[0024] Figure 8 is a partial structure diagram of the positioning mechanism;

[0025] Figure 9 is a storage seat structure diagram.

[0026] MAIN SYMBOL EXPLANATION:

[0027] 01, protective seat; 02, storage seat; 03, buffer box; 04, positioning mechanism; 05, interception mechanism; 06, series pipe one; 07, lifting pump; 11, embedded pipe; 12, sleeve groove; 13, embedded rod; 14, planting groove; 15, embedded box; 16, filter box; 17, ejection plate; 18, guide box; 19, communication pipe; 20, positioning rod; 21, expansion plate; 22, telescopic rod; 24, injection pipe; 25, connecting plate; 26, support pipe; 27, indicator light; 28, separation chamber one; 29, pull rope; 30, moving sleeve; 31, spring hinge; 32, support box; 33, moving plate; 34, separation chamber two; 35, sound; 36, connecting plate; 37, water level gauge; 38, electromagnet; 39, permanent magnet; 40, trigger rod; 41, spring; 42, trigger; 43, separation chamber three; 44, stabilizing rod; 45, conduction rod; 46, controller; 51, wire; 52, moving ring; 53, submersible pump; 54, storage chamber; 55, conduction pipe; 60, series pipe two; 62, detection chamber; 64, connecting ring; 65, micro pump; 66, mounting pipe; 67, return pipe. DETAILED DESCRIPTION

[0028] In the following, the application will be further described in conjunction with the drawings and specific embodiments, it should be noted that the following described embodiments or technical features can be combined to form new embodiments without conflict.

[0029] Embodiment 1

[0030] Please combine Figures 1-9 ,

[0031] A supporting structure for slope treatment is convenient to disassemble, comprising:

[0032] The protective seat 01 is connected with the storage seat 02 on one side, and the storage seat 02 is provided with a connecting unit on one side. The protective seat 01 blocks the bottom soil, reduces the direct sliding of the slope soil, and cooperates with the storage seat 02 to block and intercept, thereby reducing the possibility of landslides and the overall harmfulness.

[0033] The positioning mechanism 04 is fixedly connected to the slope, and a plurality of positioning mechanisms 04 are provided. The positioning mechanism 04 is connected with the connecting unit, and the positioning mechanism 04 is used for fixed-point fixing and soil and water conservation, thereby reducing the water content in the slope, reducing soil erosion, and reducing the possibility of landslides.

[0034] The positioning mechanism 04 comprises:

[0035] The embedded pipe 11 is inserted into the slope, and the embedded pipe 11 is connected with an interception unit on one side. The embedded pipe 11 extends to the bottom of the slope and penetrates into the rock layer to define the main body. The interception unit intercepts and filters the unitized slope, thereby reducing soil erosion.

[0036] An auxiliary unit is connected with the embedded pipe 11, the auxiliary unit is connected with the interception unit, and the auxiliary unit performs auxiliary work;

[0037] The connecting plate 25 is connected with the auxiliary unit, one side of the connecting plate 25 is connected with the interception mechanism 05, and the connecting plate 25 facilitates installation of the interception mechanism 05.

[0038] The interception unit comprises:

[0039] The embedded rod 13 is fixedly connected in the slope, a connecting ring 64 is threadedly sleeved at the top of the embedded rod 13, and an embedded box 15 buried in the ground is rotatably sleeved at the top of the connecting ring 64. The embedded rod 13 is embedded in the soil to be protected, is connected with the embedded box 15 through the connecting ring 64, and is unitized to block the soil. Meanwhile, a small amount of water can be stored in the embedded box 15 to facilitate subsequent work.

[0040] The filter box 16 is clamped in the embedded box 15, symmetrical micro-pumps 65 are fixedly connected in the filter box 16, output ends of the micro-pumps 65 are connected with mounting pipes 66, the two mounting pipes 66 located at the most side are connected with the communication pipe 19, the two mounting pipes 66 close to each other are connected with the series pipe two 60, the filter box 16 is connected with the embedded box 15, the filter box 16 is sleeved in the embedded box 15 and can be conveniently disassembled, one side of the embedded box 15 is provided with a pin connected with the filter box 16 to realize stable connection between the embedded box 15 and the filter box 16. The micro-pump 65 pumps to make the excess water in the filter box 16 enter the communication pipe 19 through the mounting pipe 66 to realize transmission and also can be transmitted in multiple filter boxes 16 through the series pipe two 60, and finally transmitted to the series unit through the communication pipe 19 and stored in the storage seat 02 for subsequent use.

[0041] The return pipe 67 is connected with the embedded box 15 at one end and connected with the embedded pipe 11 at the other end, and the return pipe 67 conducts to realize flow of water flow.

[0042] The embedded box 15 is provided with a detection cavity 62, one side of the filter box 16 is provided with a plurality of filter holes, one side of the filter hole is provided with a filter screen fixedly connected with the filter box 16, and the detection cavity 62 is provided with a sensor to detect the soil content at the bottom of the embedded box 15 and transmit signals.

[0043] The auxiliary unit comprises:

[0044] The support pipe 26 is sleeved in the embedded pipe 11, the top end of the support pipe 26 is connected with the connecting plate 25, the bottom end of the connecting plate 25 is fixedly connected with the moving ring 52 which is threadedly sleeved with the embedded pipe 11, the support pipe 26 supports and conducts, and the connecting plate 25 is relatively fixed with the embedded pipe 11 through the moving ring 52, so that the installation requirement is met;

[0045] The storage cavity 54 is arranged in the embedded pipe 11, the storage cavity 54 is provided with the submersible pump 53 which is fixedly connected with the moving ring 52, the output end of the submersible pump 53 is connected with the conducting pipe 55 which is connected with the support pipe 26, the conducting pipe 55 is connected with the return pipe 67, the submersible pump 53 pumps, and then water is supplied to the connecting plate 25 through the support pipe 26;

[0046] The spray pipe 24 is rotatably sleeved on the connecting plate 25, the spray pipe 24 is connected with the connecting plate 25, a plurality of spray nozzles are arranged on the spray pipe 24, the spray pipe 24 conducts water, and then the spray nozzles spray water, so that the vegetation on the slope is watered in the dry or rainy season, and the overall management and maintenance are ensured.

[0047] The implementation principle of the embodiment is that, when installing, first, according to exploration, the corresponding unit is punched, then the embedded pipe 11 is installed, then the embedded pipe 11 is taken as a base point, the embedded rod 13 is installed according to the pit or the hole, and then the early fixed-point support and interception are realized, so that the stability of the whole device is ensured, at the same time, the buffer tank 03 is installed in the buffer zone, the storage seat 02 is installed at the protection seat 01, and synchronous work is performed.

[0048] After the fixed point is completed, the support pipe 26 and the connecting plate 25 are connected in the embedded pipe 11 through the moving ring 52, the installation of the reference point is realized, the conducting pipe 55 and the return pipe 67 are connected, the connecting ring 64 and the embedded rod 13 are connected, the return pipe 67 is installed on the slope and fixed, the filter tank 16 is installed on the embedded tank 15, the plurality of series pipes two 60 and the filter tank 16 are connected, the communicating pipe 19 and the series pipe one 06 are installed in a matched mode, and the overall conduction is realized.

[0049] Embodiment 2: please combine Figures 1-9 ,

[0050] The interception mechanism 05 is installed on the positioning mechanism 04, the plurality of interception mechanisms 05 are connected with each other, the interception mechanism 05 shields in the process of landslide, and the overall danger is reduced;

[0051] The interception mechanism 05 comprises:

[0052] A spring hinge 31 is connected with the connecting plate 25, one side of the spring hinge 31 is fixedly connected with a support box 32, the spring hinge 31 is clamped on one side of the connecting plate 25, the connecting plate 25 is provided with a clamping groove for clamping, and the spring hinge 31 and the connecting plate 25 are stably connected through a pin, in subsequent disassembly, the pin is removed, and the disassembly is completed;

[0053] A guide box 18 is fixedly connected with the support box 32, one side of the guide box 18 is slidably sleeved with the ejection plate 17, the guide box 18 is provided with a plurality of indicator lights 27, one side of the guide box 18 is fixedly connected with a water level gauge 37, the bottom of the ejection plate 17 is connected with a spring 41 fixedly connected with the guide box 18, the two sides of the guide box 18 are connected with a connecting strip and a sleeving groove body 12, the guide box 18 is correspondingly limited, and the ejection plate 17 can slide in the guide box 18 under the action of the spring 41, so as to ensure subsequent rapid ejection;

[0054] The planting groove 14 is provided with two, the planting groove 14 at the bottom is fixedly connected with the guide box 18, and the planting groove 14 at the top is rotatably connected with the guide box 18. The bottom of the planting groove 14 at the top is fixedly connected with a connecting plate 36, one side of the connecting plate 36 is fixedly connected with a pull rope 29, the planting groove 14 is planted with grass and trees, and the corresponding greening is increased. When the planting groove 14 rotates, the pull rope 29 is pulled to move, triggering is realized, and corresponding interception is realized.

[0055] A stabilizing rod 44 is fixedly connected with the ejection plate 17 at one end and connected with a trigger 42 in the guide box 18 at the other end. The trigger end of the trigger 42 is connected with a trigger rod 40, the other side of the trigger rod 40 is in contact with a permanent magnet 39 in the guide box 18. One side of the permanent magnet 39 is provided with an electromagnet 38 fixedly connected with the guide box 18. The stabilizing rod 44 is connected, the trigger 42 is correspondingly limited, the electromagnet 38 drives the permanent magnet 39 to move, thereby driving the trigger rod 40 to move, realizing the triggering of the trigger 42, and thereby making the trigger 42 lose the control of the stabilizing rod 44, so that the spring 41 acts, and triggering is realized.

[0056] A moving plate 33 is arranged in the guide box 18, the moving plate 33 is slidably sleeved with the guide box 18, one side of the moving plate 33 is fixedly connected with the pull rope 29, the bottom of the moving plate 33 is fixedly connected with a moving sleeve 30, the bottom side of the moving sleeve 30 is sleeved with a guide rod 45 fixedly connected with the guide box 18. The moving plate 33 moves along with the movement of the pull rope 29, thereby pulling the moving sleeve 30, thereby triggering, conducting, and making the electromagnet 38 work.

[0057] The guiding box 18 is sequentially provided with a separation cavity one 28, a separation cavity two 34 and a separation cavity three 43 from top to bottom, the sounder 35 is fixedly connected in the separation cavity one 28, the controller 46 is fixedly connected in the separation cavity two 34, the moving plate 33 is located in the separation cavity two 34, the battery is fixedly connected in the separation cavity three 43, the separation cavity one 28, the separation cavity two 34 and the separation cavity three 43 provide corresponding spaces, the controller 46 processes signals, and the sounder 35 generates sound.

[0058] The guiding box 18 is sequentially provided with a separation cavity one 28, a separation cavity two 34 and a separation cavity three 43 from top to bottom, the sounder 35 is fixedly connected in the separation cavity one 28, the controller 46 is fixedly connected in the separation cavity two 34, the moving plate 33 is located in the separation cavity two 34, the battery is fixedly connected in the separation cavity three 43, the separation cavity one 28, the separation cavity two 34 and the separation cavity three 43 provide corresponding spaces, the controller 46 processes signals, and the sounder 35 generates sound.

[0059] The connecting unit includes a series pipe one 06 connected with the plurality of communication pipes 19, part of the series pipe one 06 is connected with a buffer tank 03 located on the buffer ground, the series pipe one 06 located at the bottom is connected with a lifting pump 07 connected with the protection seat 01, the output end of the lifting pump 07 is connected with the storage seat 02, the series pipe one 06 conducts water, the buffer tank 03 stores a small amount of water for transfer and assistance, the buffer tank 03 can be provided with a water pump three as needed for transfer, to ensure the lifting of water, and the lifting pump 07 pumps the main water.

[0060] The storage seat 02 is provided with a plurality of isolation cavities, the top of the storage seat 02 is provided with a solar panel, the outer side of the series pipe one 06 is bound with a cable, the isolation cavities store water and deposit at the same time, to ensure subsequent pumping, the solar panel provides power, and the cable transmits power.

[0061] The implementation principle of the embodiment of the application is:

[0062] According to the need, the spring hinge 31 and the support box 32 are installed on the connecting plate 25, thereby completing the installation of the guiding box 18 and the ejection plate 17, and completing the installation work.

[0063] In the process of protection, plants can be planted in the space between the two embedded boxes 15 to prevent soil erosion. When it rains, water can be filtered through the filter box 16, then pumped through the micro pump 65, through the installation pipe 66 and the communication pipe 19 and the series pipe 106, and then stored in the storage seat 02. At the same time, part of the water is temporarily stored in the embedded pipe 11 through the backflow pipe 67, thereby reducing the erosion of the slope by the water flow, and reducing soil erosion through the interception of the filter box 16. In drought, the water in the storage seat 02 is pumped, then enters the embedded pipe 11 through the communication pipe 19, the filter box 16 and the backflow pipe 67, and then is pumped through the submersible pump 53, through the support pipe 26, the connecting plate 25 and the spray pipe 24 to be pumped out for spraying, completing the corresponding work needs and achieving supply.

[0064] In the event of a large flood or accidental soil erosion, the water and soil mixture will cause the water level meter 37 to float, conduct power, and rotate the top planting tank 14, thereby rotating the pull rope 29 and the moving plate 33 to trigger. The cooperation of the two ensures the stability of the trigger and avoids accidental triggering. The movement of the moving plate 33 drives the movement of the moving sleeve 30, thereby causing the electromagnet 38 to work, and through transmission, the stabilizing rod 44 is disconnected from the trigger 42, the ejection plate 17 is lifted, and the flow of water and soil is further reduced.

[0065] In part, when it can be removed, the direct spring hinge 31 is taken out of the connecting plate 25, then the expansion plate 21 is taken out, so that the entire interception mechanism 05 is removed, then the support pipe 26 is pulled out and the filter box 16 is extracted, completing the disassembly and facilitating the overall work.

[0066] The above embodiments are only preferred embodiments of the present application, and cannot be used to limit the scope of protection of the present application. Any non-substantial changes and substitutions made by those skilled in the art based on the present application are within the scope of the present application.

Claims

1. A slope protection structure that is easy to assemble and disassemble, characterized in that, include: A protective base, one side of which is connected to a storage base, and one side of the storage base is provided with a connecting unit; The positioning mechanism is fixedly connected to the slope. Multiple positioning mechanisms are provided, and the positioning mechanisms are connected to the connecting unit. An interception mechanism is installed on a positioning mechanism, and multiple interception mechanisms are interconnected. The positioning mechanism includes: An embedded tube is inserted into the slope, and an interception unit is connected to one side of the embedded tube; An auxiliary unit, which is connected to the embedded tube, and the auxiliary unit is connected to the interception unit; A connecting plate, which is connected to the auxiliary unit, and one side of the connecting plate is connected to the interception mechanism; The interception unit includes: An embedded rod is fixedly connected to the slope. A connecting ring is threaded onto the top of the embedded rod, and an embedded box buried underground is rotatably fitted onto the top of the connecting ring. A filter box is snapped into an embedded box. Symmetrical micro pumps are fixedly connected inside the filter box. The output end of the micro pump is connected to an installation pipe. The two installation pipes located on the outermost side are connected to a connecting pipe. A series pipe is connected between two installation pipes that are close to each other. The filter box is connected to the embedded box. The return pipe is connected at one end to the embedded box and at the other end to the embedded pipe. The auxiliary unit includes: A support tube is fitted inside the embedded tube. The top end of the support tube is connected to a connecting plate, and the bottom end of the connecting plate is fixedly connected to a movable ring that is threaded into the embedded tube. A storage cavity is set inside an embedded tube. A submersible pump is fixedly connected to a moving ring inside the storage cavity. The output end of the submersible pump is connected to a guide pipe connected to a support tube. The guide pipe is connected to a return pipe. The spray pipe is rotatably mounted on the connecting plate, and the spray pipe is connected to the connecting plate. Multiple spray nozzles are provided on the spray pipe. The interception mechanism includes: A spring hinge is connected to a connecting plate, and a support box is fixedly connected to one side of the spring hinge. A guide box is fixedly connected to a support box. A catapult plate is slidably sleeved on one side of the guide box. Multiple indicator lights are provided on the guide box. A water level gauge is fixedly connected to one side of the guide box. A spring fixedly connected to the guide box is connected to the bottom of the catapult plate. Connecting strips and sleeve grooves are connected to both sides of the guide box. The planting trough has two parts. The planting trough at the bottom is fixedly connected to the guide box, and the planting trough at the top is rotatably connected to the guide box. A connecting plate is fixedly connected to the bottom of the planting trough at the top, and a pull rope is fixedly connected to one side of the connecting plate. A stabilizing rod has one end fixedly connected to the catapult plate and the other end connected to a trigger located inside the guide box. The trigger end of the trigger is connected to a trigger rod, and the other side of the trigger rod contacts a permanent magnet located inside the guide box. An electromagnet fixedly connected to the guide box is provided on one side of the permanent magnet. The movable plate is set inside the guide box and is slidably sleeved with the guide box. One side of the movable plate is fixedly connected to the pull rope, and a movable sleeve is fixedly connected to the bottom of the movable plate. A guide rod fixedly connected to the guide box is sleeved on the bottom side of the movable sleeve.

2. The easily assembled and disassembled support structure for slope treatment according to claim 1, wherein The embedded box is provided with a detection chamber, and the filter box is provided with multiple filter holes on one side, and a filter screen is provided on one side of the filter holes and fixedly connected to the filter box.

3. The easily assembled and disassembled retaining structure for slope treatment according to claim 1, wherein The guiding box is sequentially provided with a separation cavity one, a separation cavity two and a separation cavity three from top to bottom, the separation cavity one is fixedly connected with a sound box, the separation cavity two is fixedly connected with a controller, a moving plate is located in the separation cavity two, and the separation cavity three is fixedly connected with a battery.

4. The easily assembled and disassembled retaining structure for slope treatment according to claim 1, wherein One side of the guiding box is rotationally connected with a telescopic rod, a moving end of the telescopic rod is connected with a sliding block, the outer side of the sliding block is slidably sleeved with an expansion plate embedded in an inclined slope, and the bottom of the expansion plate is fixedly connected with a positioning rod located in the inclined slope.

5. The easily assembled and disassembled retaining structure for slope treatment according to claim 1, wherein The connecting unit comprises a series pipe one connected with multiple communication pipes, a buffer tank located in the buffer ground is connected with part of the series pipe one, the series pipe one located at the bottom is connected with a lifting pump connected with the protection seat, and the output end of the lifting pump is connected with the storage seat.

6. The easily assembled and disassembled retaining structure for slope treatment according to claim 5, wherein Multiple isolation cavities are arranged in the storage seat, a solar panel is arranged on the top of the storage seat, and a cable is bound to the outer side of the series pipe one.

Citation Information

Patent Citations

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